For a constant excitation of 200 turns and 1 A, the magnetic flux is mainly confined to the low-reluctance ferromagnetic C-core. When the air-gap length is increased from 1 mm to 2 mm and then 3 mm, the magnetic reluctance of the circuit increases, resulting in a reduction in magnetic flux and generally lower flux density. Fringing of flux is observed around the air gap, and the effect becomes more prominent as the gap increases.
by ahmedhussain18ahmedhussain18
by TemplatesTemplates
by ahmedhussain18ahmedhussain18
by TemplatesTemplates
m2023_2027 created this project
6 days ago
For a constant excitation of 200 turns and 1 A, the magnetic flux is mainly confined to the low-reluctance ferromagnetic C-core. When the air-gap length is increased from 1 mm to 2 mm and then 3 mm, the magnetic reluctance of the circuit increases, resulting in a reduction in magnetic flux and generally lower flux density. Fringing of flux is observed around the air gap, and the effect becomes more prominent as the gap increases.